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Estatísticas | Formato DC |



Título: DEVELOPMENT OF CAPILLARY ELECTROPHORESIS BASED METHODS WITH DIFFERENT DETECTION APPROACHES FOR DETERMINATION OF ORGANOTINS, STROBILURINS AND AMINOGLYCOSIDES
Autor: CABRINI FERRAZ DE SOUZA
Instituição: PONTIFÍCIA UNIVERSIDADE CATÓLICA DO RIO DE JANEIRO - PUC-RIO
Colaborador(es):  RICARDO QUEIROZ AUCELIO - ADVISOR
Nº do Conteudo: 23181
Catalogação:  02/07/2014 Idioma(s):  PORTUGUESE - BRAZIL
Tipo:  TEXT Subtipo:  THESIS
Natureza:  SCHOLARLY PUBLICATION
Nota:  Todos os dados constantes dos documentos são de inteira responsabilidade de seus autores. Os dados utilizados nas descrições dos documentos estão em conformidade com os sistemas da administração da PUC-Rio.
Referência [pt]:  https://www.maxwell.vrac.puc-rio.br/colecao.php?strSecao=resultado&nrSeq=23181@1
Referência [en]:  https://www.maxwell.vrac.puc-rio.br/colecao.php?strSecao=resultado&nrSeq=23181@2
Referência DOI:  https://doi.org/10.17771/PUCRio.acad.23181

Resumo:
In this work, analytical methods based on different approaches using capillary electrophoresis (CE) have been proposed. For the determination of organotins or OTs (diphenyltin and monophenyltin) in biological fluids, the separation using capillary zone electrophoresis (CZE) was applied using tandem with inductively coupled plasma mass spectrometry (CE-ICP-MS). The conditions for the analysis were optimized in an unvaried way aiming to find the conditions for the electrolyte solution (acetate buffer, 5.0 mmol L (-1), pH 2.8) and the employed instrumental parameters (45C, 30 kV and 30 s of the time for hydrodynamic introduction of the sample). A complementary solution was composed by NH4NO3 5.0 mmol L(-1), 10 por cento v/v of methanol and 1.0 g L(-1) of Cspositive in acetate buffer with pH adjusted to 2.8. The flow of this solution was set to 40 ML min(-1). The OTs were diluted either in a methanol: acetate buffer 50:50 por cento v/v solution or only in sodium acetate buffer pH 2.8. The conditions for detection by ICP-MS were set to 1200 W, 15 L min(-1) for the Ar plasma flow and 1,0 L min(-1) for the auxiliary Ar. The nebulizer Ar flow was adjusted daily. The monitored tin isotopes were 120Sn 118Sn. The isotope 133Cs was also monitored in order to control the efficiency and stability of the nebulization. The method presented a linear response between 0.05 and 2.0 mg L(-1) (0.42 a 17 Mmol L(-1)) for Sn. The value for the limits of detection (LOD) and for the limits of quantification (LOQ) for Sn were 15 Mg L(-1) (0.13 Mmol L-1) e 50 Mg L(-1) (0.42 Mmol L(-1)), calculated based on the lowest concentration of the analyte peaks that can be differentiated from the background signal. The repeatability for migration time and peak area was approximately 5 per cent. The method was applied in the analysis of organotin fortified blood and urine samples with recoveries between 75 and 95 per cent. In the case of the determination of seven strobilurin class pesticides (azoxystrobin, dimoxystrobin, fluoxastrobin, picoxystrobin, pyraclostrobin, trifloxystrobin and kresoxim-methyl) in baby food (vegetable and fruit soups), 12 the micellar electrokinetic capillary chromatography (MEKC) was used using photometric detection (UV) in a capillary with extended optical path. A multivariate study, with 33 Box Behnken design, indicated the best composition for the electrolytic solution to separate the seven pesticides: a sodium tetraborate buffer (5.1 mmol L(-1), pH 9.0) solution containing 51 mmol L(-1) sodium dodecyl sulfate and acetonitrile (24 por cento in volume). The instrumental conditions were 25C, 30 kV of applied voltage, 45 s for hydrodynamic introduction of the sample and detection at 210 nm. To increase the detection power, the concentration of the analytes into the capillary was used by using the Normal Stacking Mode. For this purpose, the solutions of standards and samples were prepared in 45 mmol L(-1) sodium tetraborate buffer solution: acetonitrile 80:20 por cento v/v. The analytical curves presented a linear behavior and the LOD values were between 7.0 Mg L (-1) or 18 nmol L(-1) (pyraclostrobin) to 15 Mg L(-1) or 33 nmol L(-1) (fluoxastrobin). The LOQ values were between 21 Mg L(-1) or 54 nmol L(-1) (pyraclostrobin) a 45 Mg L(-1) ou 98 nmol L(-1) (fluoxastrobin). The repeatability was between 1.7 to 7.9 por cento for the peak area and between 0.25 to 0.71 por cento for the migration time. The intermediate precision, evaluated by the analysis performed in different days were between 1.3 to 5.3 por cento for the peak area and between 0.06 and 0.90 per cent for the migration time. The method was applied in the analysis of baby food spiked with strobilurin. Pesticides were extracted using the QuEChERS method with pH adjustment with acetate buffer and clean-up using the dispersive solid phase extraction. The analysis results were statistically identical to those obtained with a chromatographic method adapted from the literature. The CZE separation mode was chosen to evaluate the potential of the indirect determination of aminoglycosides through the amplified photoluminescence from quantum dots (excitation laser diode 410 nm) in the presence of the analytes. The photoluminescence from quantum dots (monodispersed CdTe nanoparticles modified with thioglycolic acid) was more intense in buffer solution (pH 8.0) containing between 5 and 10 mmol L(-1) sodium tetraborate. The interaction between aminoglycosides (kanamycin and neomycin) and quantum dots inside the capillary caused the increasing of fluorescence in a pH-dependent way (indicating the electrostatic nature for the interaction). A few figures of merit were evaluated with a short linear range (0.1) to 1.0 Mmol L(-1) for kanamycin and 0.03 to 0.5 Mmol L(-1) for neomycin). The 13 minimum values detected were 0.1 nmol L(-1) or 58 Mg L(-1) (kanamycin) and 0.03 nmol L(-1) or 27 Mg L(-1) (neomycin) showing that the proposed approach can be used to detect aminoglycosides in a relatively sensitive way.

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